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Assessment of Detoxification Efficacy of Irradiation on Zearalenone Mycotoxin in Various Fruit Juices by Response Surface Methodology and Elucidation of Its in-vitro Toxicity

机译:响应面法测定辐照对酸铝酮霉菌毒素的解毒疗效,响应面方法及其在体外毒性的阐明

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摘要

Fruits are vital portion of healthy diet owed to rich source of vitamins, minerals, and dietary fibers, which are highly favorable in keeping individual fit. Unfortunately, these days, one-third of fruits were infested with fungi and their toxic metabolites called mycotoxins, which is most annoying and pose significant health risk. Therefore, there is a need to suggest appropriate mitigation strategies to overcome the mycotoxins contamination in fruits. In the present study, detoxification efficiency of irradiation on zearalenone (ZEA) mycotoxin was investigated in distilled water and fruit juices (orange, pineapple, and tomato) applying statistical program response surface methodology (RSM). The independent factors were distinct doses of irradiation and ZEA, and response factor was a percentage of ZEA reduction in content. A central composite design (CCD) consists of 13 experiments were planned applying software program Design expert with distinct doses of irradiation (up to 10 kGy) and ZEA (1–5 μg). The results revealed that independent factors had a positive significant effect on the response factor. The analysis of variance (ANOVA) was followed to fit a proper statistical model and suggested that quadratic model was appropriate. The optimized model concluded that doses of irradiation and ZEA were the determinant factors for detoxification of ZEA in fruit juices. Further, toxicological safety of irradiation mediated detoxified ZEA was assessed in the cell line model by determining the cell viability (MTT and live/dead cell assays), intracellular reactive oxygen species (ROS), mitochondrial membrane potential (MMP), nuclear damage, and caspase-3 activity. The higher level of live cells and MMP, lower extent of intracellular ROS molecules and caspase-3, and intact nuclear material were noticed in cells treated with irradiation mediated detoxified ZEA related to non-detoxified ZEA. The results confirmed that toxicity of ZEA was decreased with irradiation treatment and detoxification of ZEA by irradiation is safe. The study concluded that irradiation could be a potential post-harvest food processing technique for detoxification of ZEA mycotoxin in fruit juices. However, irradiation of fruit juices with high dose of 10 kGy has minimally altered the quality of fruit juices.
机译:水果是欠的维生素,矿物质和膳食纤维,这是在保持个人配合非常有利来源丰富健康饮食的重要部分。不幸的是,这些天,有三分之一的水果与真菌及其有毒代谢物称为真菌毒素,这是最讨厌的,并造成显著的健康风险侵扰。因此,有必要提出适当的缓解策略,以克服在水果中的真菌毒素污染。在本研究中,玉米赤霉烯酮上(ZEA)真菌毒素照射的解毒效率在蒸馏水和果汁(橙,菠萝,和番茄)应用统计程序响应面分析法(RSM)进行了研究。独立因素为不同剂量的照射和ZEA的,和响应因子是在内容ZEA减少的百分比。甲中心复合设计(CCD)由13个实验计划应用软件程序设计专家具有不同辐射剂量(高达10千戈瑞)和ZEA(1-5微克)。结果表明,独立的因素对响应因子产生积极的影响显著。方差(ANOVA)分析之后,以适应适当的统计模型,并建议二次模型是适当的。优化模型的结论是,剂量照射和ZEA是作在果汁ZEA的解毒的决定因素。此外,介导的去毒ZEA照射的毒理学安全性是在细胞系模型,通过确定细胞存活率(MTT和活/死细胞的测定),细胞内活性氧类物质(ROS),线粒体膜电位(MMP),核损伤评估,并Caspase-3活性。活细胞和MMP,细胞内ROS分子和caspase-3,和完整的核材料的低程度的较高水平与照射介导的涉及非解毒ZEA脱毒ZEA处理的细胞中注意到。结果证实ZEA的该毒性通过照射照射处理和ZEA的解毒降低是安全的。该研究的结论是,辐射可能是在果汁ZEA霉菌毒素的解毒潜在收获后食品加工技术。然而,果汁与高剂量10千戈瑞的照射已微创改变果汁的质量。

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